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NSP1的纯化揭示了其与“GLFG”核孔蛋白及一种新型核孔蛋白NIC96形成复合物。

Purification of NSP1 reveals complex formation with 'GLFG' nucleoporins and a novel nuclear pore protein NIC96.

作者信息

Grandi P, Doye V, Hurt E C

机构信息

EMBL, Heidelberg, Germany.

出版信息

EMBO J. 1993 Aug;12(8):3061-71. doi: 10.1002/j.1460-2075.1993.tb05975.x.

Abstract

The essential C-terminal domain of NSP1 mediates assembly into the nuclear pore complex (NPC). To identify components which interact physically with this yeast nucleoporin, the tagged C-terminal domain of NSP1 (ProtA-NSP1) was isolated by affinity chromatography under non-denaturing conditions. The purified complex contains ProtA-NSP1, two previously identified 'GLFG' nucleoporins, NUP49 (NSP49) and p54 and a novel protein designated NIC96 (for Nucleoporin-Interacting Component of 96 kDa). Conversely, affinity purification of tagged NSP49 enriches for NSP1, the p54 and the NIC96 component. The NIC96 gene was cloned; it encodes a novel 839 amino acid protein essential for cell growth. By immunofluorescence, protein A-tagged NIC96 exhibits a punctate nuclear membrane staining indicative of nuclear pore location. Therefore, affinity purification of tagged nucleoporins has allowed the definition of a subcomplex of the NPC and analysis of physical interactions between nuclear pore proteins.

摘要

NSP1的必需C末端结构域介导其组装进入核孔复合体(NPC)。为了鉴定与这种酵母核孔蛋白发生物理相互作用的成分,在非变性条件下通过亲和层析分离出了带标签的NSP1 C末端结构域(ProtA-NSP1)。纯化的复合体包含ProtA-NSP1、两种先前鉴定的“GLFG”核孔蛋白NUP49(NSP49)和p54以及一种新蛋白,命名为NIC96(96 kDa的核孔蛋白相互作用成分)。相反,对带标签的NSP49进行亲和纯化可富集NSP1、p54和NIC96成分。克隆了NIC96基因;它编码一种对细胞生长至关重要的新型839个氨基酸的蛋白质。通过免疫荧光,蛋白A标记的NIC96呈现出点状核膜染色,表明其位于核孔位置。因此,对带标签的核孔蛋白进行亲和纯化,有助于定义NPC的一个亚复合体,并分析核孔蛋白之间的物理相互作用。

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